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On the Effects of Hot Forging and Hot Rolling on the Microstructural Development and Mechanical Response of a Biocompatible Ti Alloy

机译:热锻和热轧对生物相容性钛合金组织发展和力学响应的影响

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摘要

Zr, Nb, and Ta as alloying elements for Ti alloys are important for attaining superior corrosion resistance and biocompatibility in the long term. However, note that the addition of excess Nb and Ta to Ti alloys leads to higher manufacturing cost. To develop low-cost manufacturing processes, the effects of hot-forging and continuous-hot-rolling conditions on the microstructure, mechanical properties, hot forgeability, and fatigue strength of Ti-15Zr-4Nb-4Ta alloy were investigated. The temperature dependences with a temperature difference (ΔT) from β-transus temperature (Tβ) for the volume fraction of the α- and β-phases were almost the same for both Ti-15Zr-4Nb-4Ta and Ti-6Al-4V alloys. In the α-β-forged Ti-15Zr-4Nb-4Ta alloy, a fine granular α-phase structure containing a fine granular β-phase at grain boundaries of an equiaxed α-phase was observed. The Ti-15Zr-4Nb-4Ta alloy billet forged at Tβ-(30 to 50) °C exhibited high strength and excellent ductility. The effects of forging ratio on mechanical strength and ductility were small at a forging ratio of more than 3. The maximum strength (σmax) markedly increased with decreasing testing temperature below Tβ. The reduction in area (R.A.) value slowly decreased with decreasing testing temperature below Tβ. The temperature dependences of σmax for the Ti-15Zr-4Nb-4Ta and Ti-6Al-4V alloys show the same tendency and might be caused by the temperature difference (ΔT) from Tβ. It was clarified that Ti-15Zr-4Nb-4Ta alloy could be manufactured using the same manufacturing process as for previously approved Ti-6Al-4V alloy, taking into account the difference (ΔT) between Tβ and heat treatment temperature. Also, the manufacturing equivalency of Ti-15Zr-4Nb-4Ta alloy to obtain marketing approval of implants was established. Thus, it was concluded that continuous hot rolling is useful for manufacturing α-β-type Ti alloy.
机译:Zr,Nb和Ta作为Ti合金的合金元素,对于长期获得优异的耐腐蚀性和生物相容性很重要。但是,请注意,向Ti合金中添加过量的Nb和Ta会导致更高的制造成本。为了开发低成本的制造工艺,研究了热锻和连续热轧条件对Ti-15Zr-4Nb-4Ta合金的组织,力学性能,热锻性和疲劳强度的影响。对于Ti-15Zr-4Nb-4Ta和Ti-6Al-4V合金,其与α相和β相的体积分数的相对于与β转变温度(Tβ)的温度差(ΔT)的温度依赖性几乎相同。 。在α-β-锻造的Ti-15Zr-4Nb-4Ta合金中,观察到在等轴α相的晶界处包含细粒状β相的细粒状α相组织。在Tβ-(30至50)°C锻造的Ti-15Zr-4Nb-4Ta合金坯料显示出高强度和出色的延展性。当锻造比大于3时,锻造比对机械强度和延展性的影响很小。随着测试温度降低到Tβ以下,最大强度(σmax)明显增加。随着测试温度降低到Tβ以下,面积(R.A.)值的降低缓慢降低。 Ti-15Zr-4Nb-4Ta和Ti-6Al-4V合金的σmax与温度的关系显示出相同的趋势,并且可能由与Tβ的温差(ΔT)引起。明确了考虑到Tβ和热处理温度之间的差异(ΔT),可以使用与先前批准的Ti-6Al-4V合金相同的制造工艺来制造Ti-15Zr-4Nb-4Ta合金。此外,还建立了Ti-15Zr-4Nb-4Ta合金的制造等效性,以获得植入物的市场许可。因此,可以得出结论,连续热轧对于制造α-β型Ti合金是有用的。

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